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Investigation on Addition of Neodymium Magnets in Hydrometallurgical Citric Acid Leaching of Rare Metals from Spent Lithium-ion Cells

机译:从废锂离子细胞中添加稀有金属含稀有金属乳液浸出中的钕磁体的研究

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The development of lithium-ion batteries has brought a revolution in electric devices. However, a growing number of electronics and electric cars pose a severe waste management challenge due to primitive lithium-ion battery recycling methods. For this reason, strong organic acid hydrometallurgical leaching received considerable attention due to its biodegradability and zero production of toxic byproducts. Citric acid, although an excellent choice from a sustainability standpoint, has not been thoroughly investigated as a leaching reagent due to its low leaching efficiency of 80%; whereas, stronger and more expensive methane sulfonic acid was able to achieve a leaching efficiency of 99.5%. However, in this study, the use of different configurations of N52 neodymium magnets in citric acid leaching was studied to examine its effect on the leaching of lithium and cobalt from LiCoO2 lithium-ion batteries. It was proven that the addition of 25 N52 neodymium magnets in citric acid leaching was able to increase the leaching efficiency of cobalt by approximately 15%. With the addition of N52 neodymium magnets, citric acid leaching efficiency of cobalt was able to achieve 95%, close to that of methane sulfonic acid, making citric acid a competitive candidate for a leaching reagent. Considering the price discrepancy of 4200% between citric acid and methane sulfonic acid and as citric acid can also be easily obtained from fruit waste, citric acid leaching using N52 neodymium magnets can make the battery recycling process cheaper, eco-friendlier, and more sustainable
机译:锂离子电池的开发带来了电气设备的革命。然而,由于原始锂离子电池再循环方法,越来越多的电子和电动车造成严重的废物管理挑战。因此,由于其生物降解性和有毒副产物的零产生,强烈的有机酸液冶金浸出受到了相当大的关注。柠檬酸,尽管由于可持续发展的角度出色的选择,由于其低浸出效率为80%,尚未彻底调查作为浸出试剂;然而,更强更昂贵的甲烷磺酸能够达到99.5%的浸出效率。然而,在本研究中,研究了在柠檬酸浸出中使用不同配置的N52钕磁体的用途,以检查其对LiCoO的锂浸出的影响 2 锂离子电池。据证明,在柠檬酸浸出中添加了25个N52钕磁铁能够将钴的浸出效率提高约15%。随着N52钕磁铁的加入,钴的柠檬酸浸出效率能够达到95%,接近甲烷磺酸的含量,使柠檬酸成为潜水试剂的竞争候选者。考虑到柠檬酸和甲烷磺酸之间的价格差异为4200%,也可以从果实废物中容易地获得柠檬酸,使用N52钕磁铁的柠檬酸浸出可以使电池回收过程便宜,生态友好,更可持续

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